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Pharm Sci
. 2019;25(3): 254-261. doi:
10.15171/PS.2019.41
Research Article
Chromatographic Quantification of Ivermectin and Pranziquantel in the Tablets Using Stability Indicating RP-HPLC Method
Naga Venkata Suresh Kumar Devaka
1
*
, Vallabhaneni Madhusudhan Rao
2
Cited by CrossRef: 14
1- Ibrahim A, Wang F, Gary Hollenbeck R, Martinez M, Fahmy R, Hoag S. Development and Validation of a Stability-indicating UPLC-DAD Method for the Simultaneous Determination of Ivermectin and Praziquantel in Pharmaceutical Tablets and Dissolution Media.
AAPS PharmSciTech
. 2023;24(7)
[Crossref]
2- Aboras S, Megahed A, El-Yazbi F, Maher H. Utility of sustainable ratio derivative spectrophotometry for the concurrent assay of synergistic repurposed drugs for COVID-19 infections; Insilico pharmacokinetics proof.
BMC Chemistry
. 2024;18(1)
[Crossref]
3- Padivitage N, Adhikari S, Rustum A. Assay of Ivermectin Including Determination and Identification of Its Related Substances in Ivermectin Injectable Product by a Stability-Indicating RP-HPLC Method.
Chromatographia
. 2021;84(11):989
[Crossref]
4- Zhao D, Wimalasinghe R, Wang L, Rustum A. Development and Validation of a Reversed-Phase High-Performance Liquid Chromatography (RP-HPLC) Method for Identification, Assay and Estimation of Related Substances of Ivermectin in Bulk Drug Batches of Ivermectin Drug Substance. 2022;60(7):620
[Crossref]
5- Koçak B, İpek Y. Electrochemical Detection of Ivermectin Used for the Treatment of COVID-19 with Glutardialdehyde-Modified Glassy Carbon Electrode.
Electrocatalysis
. 2022;13(2):108
[Crossref]
6- Gabú M, dos Santos M, Silva L, Marques da Silva P, Bedor D, Dourado D, Formiga F. Analytical Validation of an HPLC–DAD Method for Ivermectin Quantification in Polymeric Nanocapsules.
ACS Omega
. 2026;
[Crossref]
7- Kim Y, Jeong W. A HPLC-UV method for quantification of ivermectin in solution from veterinary drug products.
Korean J Vet Serv
. 2022;45(3):243
[Crossref]
8- Tonanon P, Jalando-On Agpoon K, Webster R. A comparison of the detection and quantification of praziquantel via electrochemical and gas chromatography methods in freshwater and saltwater samples.
Anal Methods
. 2024;16(9):1323
[Crossref]
9- Kumar A, Chalannavar R. Characterization of the major degradation products of the praziquantel API by mass spectrometry: Development and validation of a stability-indicating reversed phase UPLC method.
Journal of Liquid Chromatography & Related Technologies
. 2022;45(9-12):130
[Crossref]
10- TAŞPINAR N. Comparation with Spectrophotometric and Liquid Chromatographic Methods of Pharmaceutical Forms of Ivermectin. 2023;5(1):126
[Crossref]
11- Goswami S, Goswami K, Goel R, K. Dixit , Saxena V, kumar chauhan S, Kumar V. Analytical Method Development And Validation Parameters Of Drug Ivermectin.
Int J Life Sci Pharm Res
. 2022;
[Crossref]
12- Mahnashi M, Mahmoud A, Alkahtani S, El-Wekil M. Ivermectin detection using Ag@ B, S co-doped reduced graphene oxide nanohybrid.
Journal of Alloys and Compounds
. 2021;871:159627
[Crossref]
13- BÜKER E, DİNÇ E, YAŞAR N. Application of PCR and PLS Tools for the Simultaneous Quantification of Praziquantel and Ivermectin Binary Mixtures in Veterinary Tablets. 2022;10(1):385
[Crossref]
14- Da Ruos J, Baldo M, Daniele S. Analytical Methods for the Determination of Major Drugs Used for the Treatment of COVID-19. A Review.
Critical Reviews in Analytical Chemistry
. 2023;53(8):1698
[Crossref]
15- Mogaibo A, Meleshko A, Suslov V, Rybchenko O, Domnina Y, Kedik S. Quantitative Determination of Ivermectin in Polymer Microspheres.
Razrabotka i registraciâ lekarstvennyh sredstv
. 2022;11(1):90
[Crossref]
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